Jung Suk Won, Shin Jong Yoon, Pi Kilwha, Goo Yong Sook, Cho Dong-Il Dan
ISRC/ASRI, Department of Electrical and Computer Engineering, Seoul National University, 1 Gwanak-ro, Gwanak-gu, Seoul 08826, Korea.
Human Care System Research Center, Convergence System R&D Division, Korea Electronics Technology Institute, 25 Saenari-ro, Bundang-gu, Seongnam-si, Gyeonggi-do 13509, Korea.
Sensors (Basel). 2016 Dec 1;16(12):2035. doi: 10.3390/s16122035.
This paper proposes a neural stimulation device integrated with a silicon nanowire (SiNW)-based photodetection circuit for the activation of neurons with light. The proposed device is comprised of a voltage divider and a current driver in which SiNWs are used as photodetector and field-effect transistors; it has the functions of detecting light, generating a stimulation signal in proportion to the light intensity, and transmitting the signal to a micro electrode. To show the applicability of the proposed neural stimulation device as a high-resolution retinal prosthesis system, a high-density neural stimulation device with a unit cell size of 110 × 110 μ m and a resolution of 32 × 32 was fabricated on a flexible film with a thickness of approximately 50 μm. Its effectiveness as a retinal stimulation device was then evaluated using a unit cell in an in vitro animal experiment involving the retinal tissue of retinal Degeneration 1 () mice. Experiments wherein stimulation pulses were applied to the retinal tissues successfully demonstrate that the number of spikes in neural response signals increases in proportion to light intensity.
本文提出了一种集成有基于硅纳米线(SiNW)的光电检测电路的神经刺激装置,用于用光激活神经元。所提出的装置由一个分压器和一个电流驱动器组成,其中硅纳米线用作光电探测器和场效应晶体管;它具有检测光、产生与光强度成比例的刺激信号以及将信号传输到微电极的功能。为了展示所提出的神经刺激装置作为高分辨率视网膜假体系统的适用性,在厚度约为50μm的柔性薄膜上制造了单元尺寸为110×110μm、分辨率为32×32的高密度神经刺激装置。然后,在涉及视网膜变性1(rd1)小鼠视网膜组织的体外动物实验中,使用一个单元对其作为视网膜刺激装置的有效性进行了评估。向视网膜组织施加刺激脉冲的实验成功证明,神经反应信号中的尖峰数量与光强度成比例增加。